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水溶液中白花丹素与β-环糊精衍生物包合作用的分子动力学模拟分析。

Molecular Dynamic Simulation Analysis on the Inclusion Complexation of Plumbagin with β-Cyclodextrin Derivatives in Aqueous Solution.

机构信息

School of Bio-Chemical Engineering and Technology, Sirindhorn International Institute of Technology, Thammasat University, Bangkok 12120, Pathum Thani, Thailand.

出版信息

Molecules. 2021 Nov 10;26(22):6784. doi: 10.3390/molecules26226784.

Abstract

Stable encapsulation of medically active compounds can lead to longer storage life and facilitate the slow-release mechanism. In this work, the dynamic and molecular interactions between plumbagin molecule with β-cyclodextrin (BCD) and its two derivatives, which are dimethyl-β-cyclodextrin (MBCD), and 2--monohydroxypropyl-β-cyclodextrin (HPBCD) were investigated. Molecular dynamics simulations (MD) with GLYCAM-06 and AMBER force fields were used to simulate the inclusion complex systems under storage temperature (4 °C) in an aqueous solution. The simulation results suggested that HPBCD is the best encapsulation agent to produce stable host-guest binding with plumbagin. Moreover, the observation of the plumbagin dynamic inside the binding cavity revealed that it tends to orient the methyl group toward the wider rim of HPBCD. Therefore, HPBCD is a decent candidate for the preservation of plumbagin with a promising longer storage life and presents the opportunity to facilitate the slow-release mechanism.

摘要

稳定地包裹药用活性化合物可以延长储存寿命并促进缓慢释放机制。在这项工作中,研究了白花丹素分子与β-环糊精(BCD)及其两种衍生物,即二甲基-β-环糊精(MBCD)和 2--单羟丙基-β-环糊精(HPBCD)之间的动态和分子相互作用。使用 GLYCAM-06 和 AMBER 力场的分子动力学模拟(MD)用于在储存在储存温度(4°C)下模拟水溶液中的包合复合物系统。模拟结果表明,HPBCD 是与白花丹素产生稳定主客体结合的最佳包裹剂。此外,观察到结合腔内白花丹素的动态,发现它倾向于将甲基定向到 HPBCD 的较宽边缘。因此,HPBCD 是保存白花丹素的合适候选物,具有更长的储存寿命和促进缓慢释放机制的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/046c/8622708/ebd8f8182c3a/molecules-26-06784-g001.jpg

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